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基于 BiOBr 的纳米复合材料光催化去除水中难降解污染物的研究进展综述。

A review on the progress of the photocatalytic removal of refractory pollutants from water by BiOBr-based nanocomposites.

机构信息

School of Hydraulic and Environmental Engineering, Changsha University of Science & Technology, Changsha 410114, PR China; Key Laboratory of Dongting Lake Aquatic Eco-Environmental Control and Restoration of Hunan Province, Changsha 410114, PR China.

School of Hydraulic and Environmental Engineering, Changsha University of Science & Technology, Changsha 410114, PR China; Key Laboratory of Dongting Lake Aquatic Eco-Environmental Control and Restoration of Hunan Province, Changsha 410114, PR China.

出版信息

Chemosphere. 2022 Dec;308(Pt 1):136107. doi: 10.1016/j.chemosphere.2022.136107. Epub 2022 Aug 20.

Abstract

Organic matters from various sources such as the manufacturing, agricultural, and pharmaceuticals industries is continuously discharged into water bodies, leading to increasingly serious water pollution. Photocatalytic technology is a clean and green advanced oxidation process, that can successfully decompose various organic pollutants into small inorganic molecules such as carbon dioxide and water under visible light irradiation. Bismuth oxybromide (BiOBr) is an attractive visible light photocatalyst with good photocatalytic performance, suitable forbidden bandwidth, and a unique layered structure. However, the rapid combination of the electron-hole pairs generated in BiOBr leads to low photocatalytic activity, which limits its photocatalytic performance. Due to its unique electronic structure, BiOBr can be coupled with a variety of different functional materials to improve its photocatalytic performance. In this paper, We present the morphologically controllable BiOBr and its preparation process with the influence of raw materials, additives, solvents, synthesis methods, and synthesis conditions. Based on this, we propose design synthesis considerations for BiOBr-based nanocomplexes in four aspects: structure, morphology and crystalline phase, reduction of electron-hole pair complexation, photocorrosion resistance, and scale-up synthesis. The literature on BiOBr-based nanocomposites in the last 10 years (2012-2022) are summarized into seven categories, and the mechanism of enhanced photocatalytic activity of BiOBr-based nanocomposites is reviewed. Moreover, the applications of BiOBr-based nanocomposites in the fields of degradation of dye wastewater, antibiotic wastewater, pesticide wastewater, and phenol-containing wastewater are reviewed. Finally, the current challenges and prospects of BiOBr-based nanocomposites are briefly described. In general, this paper reviews the construction of BiOBr-based nanocomposites, the mechanism of photocatalytic activity enhancement and its research status and application prospects in the degradation of organic pollutants.

摘要

各种来源的有机物质,如制造业、农业和制药业,不断排放到水体中,导致水污染日益严重。光催化技术是一种清洁、绿色的高级氧化工艺,可以在可见光照射下成功地将各种有机污染物分解成小的无机分子,如二氧化碳和水。溴氧化铋(BiOBr)是一种很有吸引力的可见光光催化剂,具有良好的光催化性能、合适的禁带宽度和独特的层状结构。然而,BiOBr 中产生的电子-空穴对的快速复合导致其光催化活性低,从而限制了其光催化性能。由于其独特的电子结构,BiOBr 可以与各种不同的功能材料耦合,以提高其光催化性能。本文介绍了形态可控的 BiOBr 及其制备工艺,重点讨论了原料、添加剂、溶剂、合成方法和合成条件对 BiOBr 形貌的影响。在此基础上,从结构、形貌和晶相、减少电子-空穴对复合、光腐蚀抗性和规模化合成四个方面提出了 BiOBr 基纳米复合物的设计合成考虑因素。总结了近 10 年来(2012-2022 年)BiOBr 基纳米复合材料的文献,并综述了 BiOBr 基纳米复合材料增强光催化活性的机理。此外,还综述了 BiOBr 基纳米复合材料在染料废水、抗生素废水、农药废水和含酚废水降解等领域的应用。最后,简要描述了 BiOBr 基纳米复合材料目前面临的挑战和前景。总之,本文综述了 BiOBr 基纳米复合材料的构建、光催化活性增强的机理及其在有机污染物降解方面的研究现状和应用前景。

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